Sassa Fumihiro, Biswas Gokul Chandra, Suzuki Hiroaki
Graduate School of Information Science and Electrical Engineering, Kyushu University, 744 Motooka, Nishi-ku, Fukuoka, 819-0395, Japan.
Lab Chip. 2020 Apr 21;20(8):1358-1389. doi: 10.1039/c9lc01112a. Epub 2020 Mar 4.
Electrochemistry provides possibilities to realize smart microdevices of the next generation with high functionalities. Electrodes, which constitute major components of electrochemical devices, can be formed by various microfabrication techniques, and integration of the same (or different) components for that purpose is not difficult. Merging this technique with microfluidics can further expand the areas of application of the resultant devices. To augment the development of next generation devices, it will be beneficial to review recent technological trends in this field and clarify the directions required for moving forward. Even when limiting the discussion to electrochemical microdevices, a variety of useful techniques should be considered. Therefore, in this review, we attempted to provide an overview of all relevant techniques in this context in the hope that it can provide useful comprehensive information.
电化学为实现具有高功能的下一代智能微器件提供了可能性。电极作为电化学器件的主要组成部分,可以通过各种微加工技术形成,并且为此目的集成相同(或不同)的组件并不困难。将该技术与微流体技术相结合可以进一步扩大所得器件的应用领域。为了促进下一代器件的发展,回顾该领域的最新技术趋势并明确前进所需的方向将是有益的。即使将讨论限于电化学微器件,也应考虑各种有用的技术。因此,在本综述中,我们试图在此背景下概述所有相关技术,希望能提供有用的综合信息。